Riley Taitingfong
Biographic Data
| ID | 4090515 |
|---|---|
| NAME | Riley Taitingfong |
| GIVEN NAMES | Riley |
| FAMILY NAME | Taitingfong |
| SIGNATURE | TAITINGFONG R |
| AFFILIATIONS | University of California San Diego |
| ORCID | 0000-0003-0981-4783 |
| VERIFIED | Yes |
| TOTAL WORKS | 8 |
| TOTAL CITATIONS | 11 |
| AUTHOR COUNT | 8 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2019 |
| LATEST PUBLICATION YEAR | 2025 |
| H-INDEX | 2 |
Engagement for genetic modification technologies in conservation: For whom, how, and for what ends
Questions of engagement loom large for the use of genetic modification technologies in conservation. As scientific teams rapidly move towards implementing changes that will fundamentally alter entire species, concerns are regularly raised that associated engagement activities are inadequate. It is therefore vital to take stock of recent social research that critically examines how engagement is being enacted: who is engaged and by whom, how and o…
Confronting ignorance about militarism and settler colonialism in communication pedagogy
Discussions of pedagogy in the twenty-first century have called for place-based approaches to education, described by some as grounding learning in “local phenomena and students’ lived experience”
Aligning policy and practice to implement Care with Fair through Indigenous Peoples’ protocols
The principles driving gene drives for conservation
Gene drive technology is an emerging biotechnology with the potential to address some of the most intractable global biodiversity conservation issues. Scientists are exploring potential gene drive applications for managing invasive species and building resilience in keystone species threatened by climate change. The possibility to use gene drive for these conservation purposes has triggered significant interest in how to govern its development an…
Empowering Indigenous Knowledge in Deliberations on Gene Editing in the Wild
Proposals to release genetically engineered organisms in the wild raise complex ethical issues related to their safe and equitable implementation. While there is broad agreement that community and public engagement is vital to decision‐making in this context, more discussion is needed about who should be engaged in such activities and in what ways. This article identifies Indigenous peoples as key stakeholders in decisions about gene‐editing in t…
Impacts of personal DNA ancestry testing
Islands as Laboratories: Indigenous Knowledge and Gene Drives in the Pacific
This article argues that the genetic engineering technology known as gene drive must be evaluated in the context of the historic and ongoing impacts of settler colonialism and military experimentation on indigenous lands and peoples. After defijining gene drive and previewing some of the key ethical issues related to its use, the author compares the language used to justify Cold War–era nuclear testing in the Pacifijic with contemporary scholarsh…
Islands as Laboratories: Indigenous Knowledge and Gene Drives in the Pacific
This article argues that the genetic engineering technology known as gene drive must be evaluated in the context of the historic and ongoing impacts of settler colonialism and military experimentation on indigenous lands and peoples. After defining gene drive and previewing some of the key ethical issues related to its use, the author compares the language used to justify Cold War-era nuclear testing in the Pacific with contemporary scholarship f…
Islands as Laboratories: Indigenous Knowledge and Gene Drives in the Pacific
This article argues that the genetic engineering technology known as gene drive must be evaluated in the context of the historic and ongoing impacts of settler colonialism and military experimentation on indigenous lands and peoples. After defining gene drive and previewing some of the key ethical issues related to its use, the author compares the language used to justify Cold War-era nuclear testing in the Pacific with contemporary scholarship f…
The principles driving gene drives for conservation
Gene drive technology is an emerging biotechnology with the potential to address some of the most intractable global biodiversity conservation issues. Scientists are exploring potential gene drive applications for managing invasive species and building resilience in keystone species threatened by climate change. The possibility to use gene drive for these conservation purposes has triggered significant interest in how to govern its development an…
Aligning policy and practice to implement Care with Fair through Indigenous Peoples’ protocols
Islands as Laboratories: Indigenous Knowledge and Gene Drives in the Pacific
This article argues that the genetic engineering technology known as gene drive must be evaluated in the context of the historic and ongoing impacts of settler colonialism and military experimentation on indigenous lands and peoples. After defijining gene drive and previewing some of the key ethical issues related to its use, the author compares the language used to justify Cold War–era nuclear testing in the Pacifijic with contemporary scholarsh…
Islands as Laboratories: Indigenous Knowledge and Gene Drives in the Pacific
This article argues that the genetic engineering technology known as gene drive must be evaluated in the context of the historic and ongoing impacts of settler colonialism and military experimentation on indigenous lands and peoples. After defining gene drive and previewing some of the key ethical issues related to its use, the author compares the language used to justify Cold War-era nuclear testing in the Pacific with contemporary scholarship f…
Impacts of personal DNA ancestry testing
Islands as Laboratories: Indigenous Knowledge and Gene Drives in the Pacific
This article argues that the genetic engineering technology known as gene drive must be evaluated in the context of the historic and ongoing impacts of settler colonialism and military experimentation on indigenous lands and peoples. After defijining gene drive and previewing some of the key ethical issues related to its use, the author compares the language used to justify Cold War–era nuclear testing in the Pacifijic with contemporary scholarsh…
Empowering Indigenous Knowledge in Deliberations on Gene Editing in the Wild
Proposals to release genetically engineered organisms in the wild raise complex ethical issues related to their safe and equitable implementation. While there is broad agreement that community and public engagement is vital to decision‐making in this context, more discussion is needed about who should be engaged in such activities and in what ways. This article identifies Indigenous peoples as key stakeholders in decisions about gene‐editing in t…
The principles driving gene drives for conservation
Gene drive technology is an emerging biotechnology with the potential to address some of the most intractable global biodiversity conservation issues. Scientists are exploring potential gene drive applications for managing invasive species and building resilience in keystone species threatened by climate change. The possibility to use gene drive for these conservation purposes has triggered significant interest in how to govern its development an…
Confronting ignorance about militarism and settler colonialism in communication pedagogy
Discussions of pedagogy in the twenty-first century have called for place-based approaches to education, described by some as grounding learning in “local phenomena and students’ lived experience”
Aligning policy and practice to implement Care with Fair through Indigenous Peoples’ protocols
Engagement for genetic modification technologies in conservation: For whom, how, and for what ends
Questions of engagement loom large for the use of genetic modification technologies in conservation. As scientific teams rapidly move towards implementing changes that will fundamentally alter entire species, concerns are regularly raised that associated engagement activities are inadequate. It is therefore vital to take stock of recent social research that critically examines how engagement is being enacted: who is engaged and by whom, how and o…
Political science (6 works) · Biology (5 works) · Sociology (5 works) · Business (4 works) · CRISPR and Genetic Engineering (4 works) · Genetically Modified Organisms Research (4 works) · Indigenous (4 works) · Law (4 works) · Public relations (4 works) · Community engagement (3 works)